Maurya Svetlana Rajkumar, Mahalakshmi Radhakrishnan
Molecular Biophysics Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research, Bhopal, India.
FEBS J. 2016 May;283(10):1831-6. doi: 10.1111/febs.13637. Epub 2016 Jan 13.
The voltage-dependent anion channels (VDACs) are the workforce of mitochondrial transport and as such are required for cellular metabolism. The elaborate interplay between mitochondria and the apoptotic pathway supports a role for VDACs as a major regulator of cell death. Although VDAC-1 has an established role in apoptosis and cell homeostasis, the role of VDAC-2 has been controversial. In humans, VDAC-2 is best known for its anti-apoptotic properties. In this Viewpoint, we associate the various functional studies on VDAC-2 with structural reports, to decode its unique behavior. The well-structured N-terminus, compact barrel form, differences in the loop regions, specific transmembrane segments and the abundance of thiols in VDAC-2 enable this isoform to perform a different subset of regulatory functions, establish anti-apoptotic features and contribute to gametogenesis. VDAC-2 structural features that demarcate it from VDAC-1 suggest that this particular isoform is better suited for regulating reactive oxygen species, steroidogenesis and mitochondria-associated endoplasmic reticulum membrane regulatory pathways, with ion transport forming a secondary role. A better understanding of the unique structural features of the VDAC family will aid in the design of inhibitors that could alleviate irregularities in VDAC-controlled pathways.
电压依赖性阴离子通道(VDACs)是线粒体运输的执行者,因此是细胞代谢所必需的。线粒体与凋亡途径之间复杂的相互作用支持了VDACs作为细胞死亡主要调节因子的作用。尽管VDAC-1在凋亡和细胞稳态中已确立了作用,但VDAC-2的作用一直存在争议。在人类中,VDAC-2以其抗凋亡特性而闻名。在本观点文章中,我们将对VDAC-2的各种功能研究与结构报告相结合,以解读其独特行为。VDAC-2结构良好的N端、紧凑的桶状形式、环区差异、特定的跨膜片段以及丰富的硫醇,使其能够执行不同的调节功能子集,形成抗凋亡特征并有助于配子发生。将VDAC-2与VDAC-1区分开来的结构特征表明,这种特定的异构体更适合调节活性氧、类固醇生成和线粒体相关内质网膜调节途径,而离子运输起次要作用。更好地理解VDAC家族的独特结构特征将有助于设计能够缓解VDAC控制途径异常的抑制剂。